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Spatiotemporally and mechanically controlled triggering of mast cells using atomic force microscopy

机译:使用原子力显微镜的时尚和机械控制摇枕细胞的触发

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摘要

Abstract Mast cells are thought to be sensitive to mechanical forces, for example, coughing in asthma or pressure in ‘‘physical urticarias.’’ Conversion of mechanical forces to biochemical signals could potentially augment antigenic signaling. Studying the combined effects of mechanical and antigenic cues on mast cells and other hematopoietic cells has proven difficult. Here, we present an approach using a modified atomic force microscope cantilever to deliver antigenic signals to mast cells while simultaneously applying mechanical forces. We developed a strategy to concurrently record degranulation events by fluorescence microscopy during antigenic triggering. Finally, we also measured the mechanical forces generated by mast cells while antigen receptors are ligated. We showed that mast cells respond to antigen delivered by the atomic force microscopy cantilever with prompt degranulation and the generation of strong pushing and pulling forces. We did not discern any relationship between applied mechanical forces and the kinetics of degranulation. These experiments present a new method for dissecting the interactions of mechanical and biochemical cues in the signaling responses of immune cells.
机译:摘要桅杆细胞被认为对机械力敏感,例如,在“物理荨麻疹”中的哮喘或压力咳嗽。“对生物化学信号的转换可能会增加抗原信号传导。研究机械和抗原线索对肥大细胞和其他造血细胞的综合影响已被证明困难。这里,我们提出了一种方法,该方法使用修饰的原子力显微镜悬臂以同时施加机械力来将抗原信号递送到肥大细胞。在抗原触发期间,我们开发了通过荧光显微镜同时记录脱粒事件的策略。最后,我们还测量了肥大细胞产生的机械力,而抗原受体被连接。我们展示肥大细胞对由原子力显微镜悬臂输送的抗原,以迅速下降和强制推动和拉力的产生。我们没有辨别应用机械力与脱粒动力学之间的任何关系。这些实验提出了一种对免疫细胞信号响应中的机械和生化线轴相互作用的新方法。

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